G05F1/12

Adaptive power adjustment for current output circuit

A circuit includes an output current circuit that employs a regulated voltage to provide an output voltage to drive a load current through an output load resistor. A load resistance sensor (LRS) senses the resistance of the output load resistor based on the output voltage and the load current. A controller provides a sense voltage control command to set the regulated voltage to an initial sense voltage during a sense mode. The initial sense voltage adjusts the output voltage of the output current circuit and enables the LRS to sense the resistance of the output load resistor at a given setting of the load current. The controller provides a clamp control command based on the sensed resistance of the output load resistor to set the regulated voltage to a fixed regulated voltage during an operation mode. The fixed regulated voltage enables the output current circuit to supply a predetermined maximum load current to the output load resistor at a predetermined minimum setting of the output voltage.

Adaptive power adjustment for current output circuit

A circuit includes an output current circuit that employs a regulated voltage to provide an output voltage to drive a load current through an output load resistor. A load resistance sensor (LRS) senses the resistance of the output load resistor based on the output voltage and the load current. A controller provides a sense voltage control command to set the regulated voltage to an initial sense voltage during a sense mode. The initial sense voltage adjusts the output voltage of the output current circuit and enables the LRS to sense the resistance of the output load resistor at a given setting of the load current. The controller provides a clamp control command based on the sensed resistance of the output load resistor to set the regulated voltage to a fixed regulated voltage during an operation mode. The fixed regulated voltage enables the output current circuit to supply a predetermined maximum load current to the output load resistor at a predetermined minimum setting of the output voltage.

DECODER SYSTEMS AND METHODS FOR IRRIGATION CONTROL
20220132757 · 2022-05-05 ·

An irrigation system comprises an irrigation controller that receives user input and provides a power signal and command and message data to an encoder. The encoder encodes the command and message data onto the power signal to provide a data encoded power waveform that is sent over a two-wire path. The irrigation system further comprises one or more decoders in communication with the two-wire path to receive the data encoded power waveform and one or more irrigation valves in communication with the one or more decoders. The data encoded power waveform provides power to the decoders and the decoders decode the command and message data from the data encoded power waveform to control the irrigation valves according to the user input.

DECODER SYSTEMS AND METHODS FOR IRRIGATION CONTROL
20220132757 · 2022-05-05 ·

An irrigation system comprises an irrigation controller that receives user input and provides a power signal and command and message data to an encoder. The encoder encodes the command and message data onto the power signal to provide a data encoded power waveform that is sent over a two-wire path. The irrigation system further comprises one or more decoders in communication with the two-wire path to receive the data encoded power waveform and one or more irrigation valves in communication with the one or more decoders. The data encoded power waveform provides power to the decoders and the decoders decode the command and message data from the data encoded power waveform to control the irrigation valves according to the user input.

Gate induced drain leakage robust bootstrapped switch

Examples described herein provide an apparatus having a circuit with a grounding circuit and a switch. The apparatus generally includes a gate induced drain leakage (GIDL) protection circuit coupled to the switch and to an output voltage. The GIDL protection circuit may include a switch protection circuit configured to maintain a drain voltage of the switch less than a first supply voltage (V.sub.dd) when the circuit is in an OFF state; and a ground protection circuit configured to maintain a drain voltage of the grounding circuit less than the first supply voltage when the circuit is in an ON state.

Decoder systems and methods for irrigation control
11229168 · 2022-01-25 · ·

An irrigation system comprises an irrigation controller that receives user input and provides a power signal and command and message data to an encoder. The encoder encodes the command and message data onto the power signal to provide a data encoded power waveform that is sent over a two-wire path. The irrigation system further comprises one or more decoders in communication with the two-wire path to receive the data encoded power waveform and one or more irrigation valves in communication with the one or more decoders. The data encoded power waveform provides power to the decoders and the decoders decode the command and message data from the data encoded power waveform to control the irrigation valves according to the user input.

Decoder systems and methods for irrigation control
11229168 · 2022-01-25 · ·

An irrigation system comprises an irrigation controller that receives user input and provides a power signal and command and message data to an encoder. The encoder encodes the command and message data onto the power signal to provide a data encoded power waveform that is sent over a two-wire path. The irrigation system further comprises one or more decoders in communication with the two-wire path to receive the data encoded power waveform and one or more irrigation valves in communication with the one or more decoders. The data encoded power waveform provides power to the decoders and the decoders decode the command and message data from the data encoded power waveform to control the irrigation valves according to the user input.

Electrical power sharing system and method
11223201 · 2022-01-11 ·

A system and method for delivering shared electrical power between two or more electronic devices is provided. The system connects directly to an electrical power source and provides a continual power connection between the power source and one or more primary electronic device(s), and simultaneously, provides a switched power connection between the power source and one or more secondary electronic device(s). The system includes a power sensing system for sensing power drawn by a primary electronic device, and upon sensing that the primary device is drawing a power level below a predetermined threshold (e.g., 200 watts), the system connects a secondary electronic device to the power source (while leaving the primary electronic device still connected) so that it also may draw power. Example primary electronic devices include an electric clothes dryer, and example secondary electronic devices include a Type 2 electric vehicle charger.

Electrical power sharing system and method
11223201 · 2022-01-11 ·

A system and method for delivering shared electrical power between two or more electronic devices is provided. The system connects directly to an electrical power source and provides a continual power connection between the power source and one or more primary electronic device(s), and simultaneously, provides a switched power connection between the power source and one or more secondary electronic device(s). The system includes a power sensing system for sensing power drawn by a primary electronic device, and upon sensing that the primary device is drawing a power level below a predetermined threshold (e.g., 200 watts), the system connects a secondary electronic device to the power source (while leaving the primary electronic device still connected) so that it also may draw power. Example primary electronic devices include an electric clothes dryer, and example secondary electronic devices include a Type 2 electric vehicle charger.

Power outlet and method for use
11166144 · 2021-11-02 · ·

A power outlet for controlling power to an external device and transmitting data to the external device, the power outlet including: a housing containing at least one alternating-current power input connection; a power output connection; a data connector; a sensor module; a wireless communication module, including an antenna; a processing unit configured to receive data and control an electrically connected device through the power output connection and/or data connector based on the received data.